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understanding of how soil management practices influence key physicochemical and biological soil properties in compacted soils. To explore how insights generated from experimental, analytical, or modelling
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intelligence-based modelling approaches in representing product quality and shelf-life dynamics under variable handling conditions. Examine how insights derived from digitally enabled and data-oriented analyses
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substrate behavior and plant responses. Insights into broader sustainability implications of transitioning away from peat, including potential environmental, agronomic or socioeconomic trade-offs associated
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valuable insights to help optimize device performance. Additionally, you will support collaborators by assisting with in-situ TEM measurements, facilitating cutting-edge research in sustainability and energy
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supporting food safety risk assessment. Insights into pathways relating analytical or model-based outputs to decision-support concepts relevant to food safety stakeholders. Contributions to improved
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microbial safety and spoilage control. Conceptual insights into interactions between cold plasma, pathogenic and non-pathogenic microorganisms, and fresh produce tissues relevant to postharvest quality
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-products. New insights into approaches for the purification, identification, and characterization of bioactive compounds derived from plant-based by-products. Enhanced understanding of interactions between
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. Working closely with partners in the IMPRESS project, you will analyse their materials and provide valuable insights to help optimize device performance. Additionally, you will support collaborators by
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. Working closely with partners in the IMPRESS project, you will analyse their materials and provide valuable insights to help optimize device performance. Additionally, you will support collaborators by
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found in the environment: genes of social partners and genes of the gut microbiota. Most relevant publication for this project: Novel insights into the genetic architecture and mechanisms of host